Azimuthal Shear Deformation of a Novel Soft Fiber-reinforced Rotary Pneumatic Actuator

Young Min Lee, H. Lee, H. Moon, Hyoukryeol Choi, J. Koo
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引用次数: 2

Abstract

The Elastic Inflatable Actuators (EIAs) has several advantages such as the inherent compliance due to the body comprised of a soft materials such as silicone. Among them, the soft fiber reinforced actuator is based on the principle that the expansion of enclosure and constraint of fiber pattern lead to a desired operation. While lots of researches on the actuator has been attributed to linear and bending motions, however, there are only few researches on rotary, or torsional, motions. In this paper, we propose a new actuator that causes azimuthal deformation due to restriction of anisotropically distributed fiber element along the radial direction and expansion of the hyper elastic material. Structure design of the actuator and a fabrication process of the actuator are presented. Subsequently, FEM simulation and experiment are executed to measure rotation angles of the actuators corresponding to the applied pressure.
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一种新型软纤维增强旋转气动执行器的方位剪切变形
弹性充气致动器(eia)有几个优点,如固有的顺应性,由于主体组成的软材料,如硅胶。其中,软纤维增强致动器是基于外壳的膨胀和纤维图案的约束导致预期操作的原理。对作动器的研究大多集中在直线运动和弯曲运动上,而对旋转运动或扭转运动的研究却很少。本文提出了一种新型致动器,该致动器由于纤维元件沿径向各向异性分布的限制和超弹性材料的膨胀而引起方位变形。介绍了作动器的结构设计和制作工艺。在此基础上,进行了有限元仿真和实验,测量了执行机构在施加压力时的转角。
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